Department of Civil Engineering, Chu Hai College of Higher Education, Riviera Garden, Tsuen Wan, Hong Kong, China.
Sensors (Basel). 2012;12(3):3656-68. doi: 10.3390/s120303656. Epub 2012 Mar 16.
Steel corrosion is a major cause of degradation in reinforced concrete structures, and there is a need to develop cost-effective methods to detect the initiation of corrosion in such structures. This paper presents a low cost, easy to use fiber optic corrosion sensor for practical application. Thin iron film is deposited on the end surface of a cleaved optical fiber by sputtering. When light is sent into the fiber, most of it is reflected by the coating. If the surrounding environment is corrosive, the film is corroded and the intensity of the reflected signal drops significantly. In previous work, the sensing principle was verified by various experiments in laboratory and a packaging method was introduced. In this paper, the method of multiplexing several sensors by optical time domain reflectometer (OTDR) and optical splitter is introduced, together with the interpretation of OTDR results. The practical applicability of the proposed sensors is demonstrated in a three-year field trial with the sensors installed in an aggressive marine environment. The durability of the sensor against chemical degradation and physical degradation is also verified by accelerated life test and freeze-thaw cycling test, respectively.
钢筋混凝土结构的腐蚀是退化的主要原因,因此需要开发具有成本效益的方法来检测此类结构中腐蚀的开始。本文提出了一种低成本、易于使用的光纤腐蚀传感器,可用于实际应用。通过溅射在切割光纤的端面上沉积一层薄的铁膜。当光线进入光纤时,大部分光线会被涂层反射。如果周围环境具有腐蚀性,则薄膜会被腐蚀,反射信号的强度会明显下降。在之前的工作中,通过实验室中的各种实验验证了传感原理,并介绍了一种封装方法。本文介绍了通过光时域反射仪 (OTDR) 和光分路器复用多个传感器的方法,并对 OTDR 结果进行了解释。通过在具有腐蚀性的海洋环境中安装传感器进行为期三年的现场试验,证明了所提出的传感器的实际适用性。通过加速寿命试验和冻融循环试验分别验证了传感器对化学降解和物理降解的耐久性。